Accuracy Analysis of Complex Transmission System with Distributed Tooth Profile Errors

Machines Pub Date : 2024-07-06 DOI:10.3390/machines12070459
Min Zhang, Zhijing Zhang, Jian Xiong, Xiao Chen
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Abstract

Tooth profile errors are the internal excitations that cause gear meshing errors, which are critical error factors affecting gear transmission accuracy. In existing studies, it is usually regarded as a constant or random distribution function. However, the actual machined tooth profile error is not a constant, so this estimation is inconsistent with the actual situation, resulting in an inaccurate evaluation of transmission accuracy. This paper proposes a method for representing tooth profile errors using distribution errors (including systematic and random errors), and a mathematical model of distributed tooth profile errors is presented. The contact stresses of the complex transmission system were compared with those obtained by formulas, proving that tooth profile errors increase contact stress. A method for calculating gear meshing error is proposed to evaluate the actual output accuracy of the complex transmission system. Compared with the test, the output accuracy is reduced by 13.8% under the temperature environment and distributed tooth profile errors. The proposed methods can accurately predict the transmission accuracy of precision transmission systems at the design stage and provide theoretical support for reducing systematic and random errors at the gear machining stage.
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具有分布式齿形误差的复杂传动系统的精度分析
齿廓误差是导致齿轮啮合误差的内部激励,是影响齿轮传动精度的关键误差因素。在现有研究中,通常将其视为常数或随机分布函数。然而,实际加工齿形误差并非常数,因此这种估计与实际情况不符,导致对传动精度的评估不准确。本文提出了一种用分布误差(包括系统误差和随机误差)表示齿廓误差的方法,并给出了分布式齿廓误差的数学模型。将复杂传动系统的接触应力与公式得出的接触应力进行了比较,证明齿廓误差会增加接触应力。提出了计算齿轮啮合误差的方法,以评估复合传动系统的实际输出精度。与测试结果相比,在温度环境和分布式齿形误差条件下,输出精度降低了 13.8%。所提出的方法可以在设计阶段准确预测精密传动系统的传动精度,并为在齿轮加工阶段减少系统误差和随机误差提供理论支持。
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